• Title/Summary/Keyword: Heat transmission pipe

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Evaluation of Operating Conditions for the Natural Gas Transmission Pipeline in the Arctic Environment (극한지 장거리 천연가스 배관의 운전조건 평가)

  • Kim, Young-Pyo;Kim, Ho-Yeon;Kim, Woo-Sik
    • Journal of the Korean Institute of Gas
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    • v.21 no.1
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    • pp.72-79
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    • 2017
  • The operating temperature range of the natural gas pipeline in Arctic environment would be controlled primarily to optimize gas throughput and to minimize the environmental impact resulting from operation of such pipelines. The temperature of the gas as it flows through the pipeline is a function of both the Joule-Thomson effect and the pipe to soil heat transfer. Therefore, the heat transfer and Joule-Thomson effect of the buried natural gas pipeline in this study were carefully considered. Soil temperatures and overall heat transfer coefficients were assumed to be $0{\sim}-20^{\circ}C$ and $0{\sim}5.5W/m^2K$, respectively. The gas temperature and pressure calculations along a pipeline were performed simultaneously at different soil temperatures and overall heat transfer coefficients. Also, this study predicted the phase change and hydrate formation for different soil temperatures and overall heat transfer coefficients using HYSYS simulation package.

MODELING AND SIMULATION FOR GAS PIPELINE SYSTEMS

  • Yoshida, Makoto;Kawato, Takashi;Fujita, Toshinori;Kawashima, Kenji;Kagawa, Toshiharu
    • Proceedings of the Korea Society for Simulation Conference
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    • 2001.10a
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    • pp.335-339
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    • 2001
  • City gas is one of the most important necessities of daily city life and social infrastructures. City gas is delivered to every user through a pipeline network. The gas pressure in the pipeline is regulated by gas regulator. In the pressure control system, characteristics of gas pipeline is as important as characteristics of regulator. There are many reports about the transfer function model of the fluid pipeline. But suitable model about the gas transmission pipeline is not known. In this paper, as the transfer function model of the gas pipeline, new model considering the heat transfer between pipe wall and gas and temperature change of gas is proposed. To evaluate this model, frequency response tests are used. As the result, the proposed model shows a better agreement when compared with the experimental result than conventional models. The results show the effectiveness of the model.

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Fatigue Evaluation of District Heat Pipes based on the Measured Data (실데이터 분석을 통한 지역난방 열배관의 피로안전성 평가)

  • Park, Jin-Eun;Kyung, Kab-Soo;An, Yong-Mo;Kwon, Soon-Cheol
    • Journal of Korean Society of Steel Construction
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    • v.23 no.5
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    • pp.569-579
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    • 2011
  • Heating pipes, which are among the main equipment in district heating systems, can be classified into supply and return pipes. Because when the district heating transmission pipe, which is charged with district heating in small to medium-size cities, is under thermal stress during temperature variances in heating water, it suffers from the fatigue phenomenon caused by the thermal stress, according to the number of its service years. District heatingpipes have shown various characteristics according to the operating condition of the service connections, and the irregular temperature variance has had a bad influence on fatigue heating pipes. Therefore, in this study, a field test on laid heating pipes was performed, and the data for each region were analyzed. Also, the fatigue safety of district heating pipes was evaluated via cycle-based evaluation and stress-based evaluation.

An Experimental Study on Thermal Conductivity of Controlled Low Strength Materials with Coal Ash (석탄회를 활용한 CLSM의 열전도도에 관한 실험적 연구)

  • Lee, Seung Jun;Lee, Jong Hwi;Cho, Hyun Soo;Chun, Byung Sik
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.32 no.3C
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    • pp.95-104
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    • 2012
  • Due to current interest in creation of urban space and urban landscape, more emphasis has been placed on underground space development. With increasing number of underground power cables and its importance, a study of backfill materials for pipe is now imperative. Backfill materials require outstanding thermal characteristics since breakdown of cable insulation can be caused if heat generated from transmission of underground power cables had not been effectively discharged through backfill materials. Also, coal ash, which are industrial by-products, is being produced in high volume every year. Among them, ponded ash (PA) is not recycled and instead, mostly buried. Therefore in this study, thermal conductivity test based on mixture ratio (PA, ponded ash : FA, fly ash) was performed to evaluate the thermal conductivity characteristics of CLSM (controlled low strength materials) with coal ash. The results indicate that the mixture ratio (PA, ponded ash : FA, fly ash) of 80:20, water contents of 28~30%, and cement contents of 7-11% showed the highest conductivity at 0.796~0.884W/mK and thus, considered optimal in terms of recycling ponded ash (PA) as well as for maximizing utilization as backfill materials for pipe in underground.

전기화학공정을 이용한 질화규소방열기판 상 금속 전극 형성에 관한 연구

  • Sin, Seong-Cheol;Kim, Ji-Won;Gwon, Se-Hun;Im, Jae-Hong
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2016.11a
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    • pp.129.1-129.1
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    • 2016
  • 반도체, 디스플레이, PC 등 전자기기의 경우 소자 내 발생된 열로 인해 기기의 성능 및 효율, 수명 등이 감소하기 때문에 이러한 내부 열을 외부로 방출시켜줄 필요가 있다. 일반적으로 heat pipe나 냉각 팬(fan) 등의 외부장치에 의해 강제적으로 냉각해주는 기술이 있지만 휴대용 디바이스와 같이 작은 전자기기의 경우 소자 자체적으로 열전도 특성이 뛰어난 기판을 사용하여 열전도에 의해 열이 소자 밖으로 방출될 수 있도록 방열 설계를 해주어야 한다. 따라서 소자 전체를 지지해주고 열전도에 의해 방열 기능을 해주는 방열기판에 대한 관심이 증가하고 있다. 현재 가장 많이 사용되어지는 세라믹 방열기판으로는 알루미나가 있지만 보다 소자의 집적화와 고성능화로 인하여 열전도도가 높은 질화규소 기판의 요구가 증대되고 있다. 하지만 이러한 질화규소기판에 금속전극을 형성하는 기술은 종래의 알루미나 기판에 이용한 DPC(Direct Plated Copper), DBC(Direct Bonded Copper)기술을 적용할 수 없다. 그래서 현재는 메탈블레이징을 이용하여 전극을 형성하지만 공정비용 및 대형기판에 형성이 어려운 단점이 있다. 따라서, 본 연구에서는 질화규소 방열기판에 전기화학공정을 통하여 밀착력이 우수한 금속 전극 회로층 형성에 대한 연구를 진행하였다. 질화규소 방열기판에 무전해 Ni 도금을 통하여 금속층을 형성하는데 이 때 세라믹 기판과 금속층 사이의 낮은 밀착력을 향상시키기 위해 습식공정을 통하여 표면처리를 진행하였다. 또한 촉매층을 $Pd-TiO_2$ 층을 이용하여 무전해 도금공정을 이용하여 Ni, 전극층을 형성하였다. 질화규소 표면에 OH기 형성을 확인하기 위해 FT-IR(Fourier-transform infrared spectroscopy)분석을 실시하였으며 OH 그룹 형성 및 silane의 화학적 결합으로 인해 금속 전극층의 밀착력이 향상된 것을 cross hatch test 및 scratch test를 통해 확인하였고 계면 및 표면형상 특성 등을 분석하기 위해 TEM(Transmission electron microscopy), SEM(Scanning electron microscopy), AFM(Atomic-force microscopy)등의 장비를 이용하였다.

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